Evidence that Mass Loss on the Red Giant Branch Decreases with Metallicity
arXiv:2505.12794 · doi:10.3847/1538-4357/ade3c7
Abstract
Mass loss on the red giant branch (RGB) influences stellar evolution, properties of stellar populations, and Galactic chemical enrichment, yet remains poorly constrained observationally. Current models provide limited insight into how stellar properties, particularly how metallicity and mass, affect RGB mass loss. Here, I introduce a new observational approach that uses the age-velocity-dispersion relation and the lower-mass boundary of red giants as precise evolutionary markers. These markers, informed by Galactic evolution, allow us to construct observational isochrones for field stars. By comparing masses of RGB stars and red clump (RC) stars at the same age in the Kepler sample, I derive empirical measurements of integrated RGB mass loss at several points in age and metallicity. Combining these new observational measurements with open-cluster studies, I showed that the integrated mass loss on the RGB decreases with metallicity, and may also decrease with stellar mass. The average mass-loss rate, which accounts for RGB lifetimes and the initial mass differences between RGB and RC stars at the same age, also shows a similar trend. These findings challenge current mass-loss prescriptions widely adopted in stellar evolutionary models, since none of them is able to produce the observed mass-loss trend without widely adjusting free parameters. This highlights an urgent need to revise mechanisms that govern RGB mass loss.
15 pages, 12 figures. published by ApJ
References in corpus (30)
- Gaia Data Release 3: Summary of the content and survey properties
- galpy: A Python Library for Galactic Dynamics
- Hot Jupiters and Cool Stars
- Age dissection of the Milky Way discs: red giants in the Kepler field
- Mass loss on the red giant branch: the value and metallicity dependence of Reimers' η in globular clusters
- NGC 6819: testing the asteroseismic mass scale, mass loss, and evidence for products of non-standard evolution
- The age-velocity dispersion relation of the Galactic discs from LAMOST-Gaia data
- Age dating of an early Milky Way merger via asteroseismology of the naked-eye star Indi
- Fundamental relations for the velocity dispersion of stars in the Milky Way
- The K2 M67 Study: Revisiting old friends with K2 reveals oscillating red giants in the open cluster M67
- Testing the radius scaling relation with DR2 in the field
- APOKASC-3: The Third Joint Spectroscopic and Asteroseismic catalog for Evolved Stars in the Kepler Fields
- Spectroscopic age estimates for APOGEE red-giant stars: Precise spatial and kinematic trends with age in the Galactic disc
- Mass loss along the red giant branch in 46 Globular Clusters and their multiple populations
- Discovery of post-mass-transfer helium-burning red giants using asteroseismology
- Mass Outflow from Red Giant Stars in M13, M15, and M92
- An empirical mass-loss law for Population II giants from the Spitzer-IRAC survey of Galactic globular clusters
- Integrated Mass Loss of Evolved Stars in M4 using Asteroseismology
- Asteroseismic measurement of core and envelope rotation rates for 2006 red giant branch stars
- Asteroseismic Signatures of Core Magnetism and Rotation in Hundreds of Low-Luminosity Red Giants
- Testing the intrinsic scatter of the asteroseismic scaling relations with Kepler red giants
- Mass loss law for red giant stars in simple population globular clusters
- Asteroseismology of luminous red giants with Kepler. II. Dependence of mass loss on pulsations and radiation
- Alfvén wave-driven wind from RGB and AGB stars
- Red Horizontal Branch stars: an asteroseismic perspective
- Connecting integrated RGB mass loss from asteroseismology and globular clusters
- Magnetic activity of red giants: correlation between the amplitude of solar-like oscillations and chromospheric indicators
- Asteroseismic Study of Subgiants and Giants of the Open Cluster M67 using Kepler/K2: Expanded Sample and Precise Masses
- The Kepler IRIS Catalog: Image subtraction light curves for 9,150 stars in and around the open clusters NGC 6791 and NGC 6819
- Pushing the boundaries of asteroseismic individual frequency modelling: unveiling two evolved very-low metallicity red giants